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通过转换为一维饱和转移差异同核耦合谱增强饱和转移差异实验中的信号分散。

Enhanced signal dispersion in saturation transfer difference experiments by conversion to a 1D-STD-homodecoupled spectrum.

作者信息

Martín-Pastor Manuel, Vega-Vázquez Marino, De Capua Antonia, Canales Angeles, André Sabine, Gabius Hans-Joachim, Jiménez-Barbero Jesús

机构信息

Laboratorio Integral de Dinámica e Estructura de Biomoléculas José R. Carracido, Unidade de Resonancia Magnética, Edificio CACTUS, RIAIDT, Universidade de Santiago de Compostela, 15706, Santiago de Compostela, Spain.

出版信息

J Biomol NMR. 2006 Oct;36(2):103-9. doi: 10.1007/s10858-006-9055-4. Epub 2006 Sep 20.

Abstract

The saturation transfer difference (STD) experiment is a rich source of information on topological aspects of ligand binding to a receptor. The epitope mapping is based on a magnetization transfer after signal saturation from the receptor to the ligand, where interproton distances permit this process. Signal overlap in the STD spectrum can cause difficulties to correctly assign and/or quantitate the measured enhancements. To address this issue we report here a modified version of the routine experiment and a processing scheme that provides a 1D-STD homodecoupled spectrum (i.e. an experiment in which all STD signals appear as singlets) with line widths similar to those in original STD spectrum. These refinements contribute to alleviate problems of signal overlap. The experiment is based on 2D-J-resolved spectroscopy, one of the fastest 2D experiments under conventional data sampling in the indirect dimension, and provides excellent sensitivity, a key factor for the difference experiments.

摘要

饱和转移差异(STD)实验是获取配体与受体结合拓扑方面信息的丰富来源。表位映射基于信号从受体饱和转移到配体后的磁化转移,其中质子间距离允许该过程发生。STD谱中的信号重叠可能导致难以正确归属和/或定量所测量的增强信号。为解决此问题,我们在此报告常规实验的改进版本以及一种处理方案,该方案可提供一维STD同核去耦谱(即所有STD信号均以单峰形式出现的实验),其线宽与原始STD谱相似。这些改进有助于缓解信号重叠问题。该实验基于二维J分辨光谱,是间接维度常规数据采样下最快的二维实验之一,具有出色的灵敏度,这是差异实验的关键因素。

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